期刊文献+

Nested Group Testing Procedure

原文传递
导出
摘要 We investigated the false-negative,true-negative,false-positive,and true-positive predictive values from a general group testing procedure for a heterogeneous population.We show that its false(true)-negative predictive value of a specimen is larger(smaller),and the false(true)-positive predictive value is smaller(larger)than that from individual testing procedure,where the former is in aversion.Then we propose a nested group testing procedure,and show that it can keep the sterling characteristics and also improve the false-negative predictive values for a specimen,not larger than that from individual testing.These characteristics are studied from both theoretical and numerical points of view.The nested group testing procedure is better than individual testing on both false-positive and false-negative predictive values,while retains the efficiency as a basic characteristic of a group testing procedure.Applications to Dorfman’s,Halving and Sterrett procedures are discussed.Results from extensive simulation studies and an application to malaria infection in microscopy-negative Malawian women exemplify the findings.
出处 《Communications in Mathematics and Statistics》 SCIE CSCD 2023年第4期663-693,共31页 数学与统计通讯(英文)
基金 supported by National Natural Science Foundation of China (Grant Nos.11801102,11861017) Beijing Natural Science Foundation (Z180006) the Intramural Research Program of the Eunice Kennedy Shriver National Institute of Child Health and Human Development of the National Institutes of Health.
  • 相关文献

参考文献1

二级参考文献65

  • 1Dorfman R.The detection of defective numbers of large populations [J].Annals of Mathematical Statistics,1943,14:436-440.
  • 2Lewis J,Lockary V,Kobic S.Cost savings and increased efficiency using a stratified specimen pooling strategy for Chlamydia trachomatis and Neisseria gonorrhoeae [J].Sexually Transmitted Diseases,2012,39:46-48.
  • 3Jirsa S.Pooling specimens:A Decade of Successful Cost Savings [M].Chicago,IL:National STD Prevention Conference,2008.
  • 4Chiang K,Chung W,Lin S,Lai S,Wang S.Group testing design for the infection rates of potatoes viruses [J].Plant Pathol.Bull,2008,17:321-326.
  • 5WHO.World Health Organization Department of Essential Health Technologies,HIV Assays [R].Operational Characteristics,report 15,WHO,2004.
  • 6Altman D,Bland J.Statistics Notes:Diagnostic tests 2:Predictive values [J].Bmj,1994,309(6947):102.
  • 7Daar E,Little S,Pitt J,et al.Diagnosis of primary HIV-I infection [J].Annals of internal medicine,2001,134(1):25-29.
  • 8Johnson N L,Kotz S,Wu X.Inspection Errors for Attributes in Quality Control [M].New York:Chapman and Hall Ltd.,1991.
  • 9Li C.A sequential method for screening experimental variables [J].Journal of the American Statistical Association,1962,57:455-477.
  • 10Kim H,Hudgens M,Dreyfuss J,Westreich D,Pilcher C.Comparison of group testing algorithms for case identification in the presence of test error [J].Biometrics,2007,63:1152-1163.

共引文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部